1 /* 2 * Copyright (c) 2013-2014, ARM Limited and Contributors. All rights reserved. 3 * 4 * Redistribution and use in source and binary forms, with or without 5 * modification, are permitted provided that the following conditions are met: 6 * 7 * Redistributions of source code must retain the above copyright notice, this 8 * list of conditions and the following disclaimer. 9 * 10 * Redistributions in binary form must reproduce the above copyright notice, 11 * this list of conditions and the following disclaimer in the documentation 12 * and/or other materials provided with the distribution. 13 * 14 * Neither the name of ARM nor the names of its contributors may be used 15 * to endorse or promote products derived from this software without specific 16 * prior written permission. 17 * 18 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" 19 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 20 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 21 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE 22 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 23 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 24 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 25 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 26 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 27 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 28 * POSSIBILITY OF SUCH DAMAGE. 29 */ 30 31 #include <arch.h> 32 #include <arch_helpers.h> 33 #include <assert.h> 34 #include <bl_common.h> 35 #include <debug.h> 36 #include <errno.h> 37 #include <io_storage.h> 38 #include <platform.h> 39 40 unsigned long page_align(unsigned long value, unsigned dir) 41 { 42 unsigned long page_size = 1 << FOUR_KB_SHIFT; 43 44 /* Round up the limit to the next page boundary */ 45 if (value & (page_size - 1)) { 46 value &= ~(page_size - 1); 47 if (dir == UP) 48 value += page_size; 49 } 50 51 return value; 52 } 53 54 static inline unsigned int is_page_aligned (unsigned long addr) { 55 const unsigned long page_size = 1 << FOUR_KB_SHIFT; 56 57 return (addr & (page_size - 1)) == 0; 58 } 59 60 void change_security_state(unsigned int target_security_state) 61 { 62 unsigned long scr = read_scr(); 63 64 if (target_security_state == SECURE) 65 scr &= ~SCR_NS_BIT; 66 else if (target_security_state == NON_SECURE) 67 scr |= SCR_NS_BIT; 68 else 69 assert(0); 70 71 write_scr(scr); 72 } 73 74 /****************************************************************************** 75 * Determine whether the memory region delimited by 'addr' and 'size' is free, 76 * given the extents of free memory. 77 * Return 1 if it is free, 0 otherwise. 78 *****************************************************************************/ 79 static int is_mem_free(uint64_t free_base, size_t free_size, 80 uint64_t addr, size_t size) 81 { 82 return (addr >= free_base) && (addr + size <= free_base + free_size); 83 } 84 85 /****************************************************************************** 86 * Inside a given memory region, determine whether a sub-region of memory is 87 * closer from the top or the bottom of the encompassing region. Return the 88 * size of the smallest chunk of free memory surrounding the sub-region in 89 * 'small_chunk_size'. 90 *****************************************************************************/ 91 static unsigned int choose_mem_pos(uint64_t mem_start, uint64_t mem_end, 92 uint64_t submem_start, uint64_t submem_end, 93 size_t *small_chunk_size) 94 { 95 size_t top_chunk_size, bottom_chunk_size; 96 97 assert(mem_start <= submem_start); 98 assert(submem_start <= submem_end); 99 assert(submem_end <= mem_end); 100 assert(small_chunk_size != NULL); 101 102 top_chunk_size = mem_end - submem_end; 103 bottom_chunk_size = submem_start - mem_start; 104 105 if (top_chunk_size < bottom_chunk_size) { 106 *small_chunk_size = top_chunk_size; 107 return TOP; 108 } else { 109 *small_chunk_size = bottom_chunk_size; 110 return BOTTOM; 111 } 112 } 113 114 /****************************************************************************** 115 * Reserve the memory region delimited by 'addr' and 'size'. The extents of free 116 * memory are passed in 'free_base' and 'free_size' and they will be updated to 117 * reflect the memory usage. 118 * The caller must ensure the memory to reserve is free. 119 *****************************************************************************/ 120 void reserve_mem(uint64_t *free_base, size_t *free_size, 121 uint64_t addr, size_t size) 122 { 123 size_t discard_size; 124 size_t reserved_size; 125 unsigned int pos; 126 127 assert(free_base != NULL); 128 assert(free_size != NULL); 129 assert(is_mem_free(*free_base, *free_size, addr, size)); 130 131 pos = choose_mem_pos(*free_base, *free_base + *free_size, 132 addr, addr + size, 133 &discard_size); 134 135 reserved_size = size + discard_size; 136 *free_size -= reserved_size; 137 138 if (pos == BOTTOM) 139 *free_base = addr + size; 140 141 INFO("Reserved %u bytes (discarded %u bytes %s)\n", 142 reserved_size, discard_size, 143 pos == TOP ? "above" : "below"); 144 } 145 146 static void dump_load_info(unsigned long image_load_addr, 147 unsigned long image_size, 148 const meminfo_t *mem_layout) 149 { 150 #if DEBUG 151 tf_printf("Trying to load image at address 0x%lx, size = 0x%lx\r\n", 152 image_load_addr, image_size); 153 tf_printf("Current memory layout:\r\n"); 154 tf_printf(" total region = [0x%lx, 0x%lx]\r\n", mem_layout->total_base, 155 mem_layout->total_base + mem_layout->total_size); 156 tf_printf(" free region = [0x%lx, 0x%lx]\r\n", mem_layout->free_base, 157 mem_layout->free_base + mem_layout->free_size); 158 #endif 159 } 160 161 /* Generic function to return the size of an image */ 162 unsigned long image_size(const char *image_name) 163 { 164 uintptr_t dev_handle; 165 uintptr_t image_handle; 166 uintptr_t image_spec; 167 size_t image_size = 0; 168 int io_result = IO_FAIL; 169 170 assert(image_name != NULL); 171 172 /* Obtain a reference to the image by querying the platform layer */ 173 io_result = plat_get_image_source(image_name, &dev_handle, &image_spec); 174 if (io_result != IO_SUCCESS) { 175 WARN("Failed to obtain reference to image '%s' (%i)\n", 176 image_name, io_result); 177 return 0; 178 } 179 180 /* Attempt to access the image */ 181 io_result = io_open(dev_handle, image_spec, &image_handle); 182 if (io_result != IO_SUCCESS) { 183 WARN("Failed to access image '%s' (%i)\n", 184 image_name, io_result); 185 return 0; 186 } 187 188 /* Find the size of the image */ 189 io_result = io_size(image_handle, &image_size); 190 if ((io_result != IO_SUCCESS) || (image_size == 0)) { 191 WARN("Failed to determine the size of the image '%s' file (%i)\n", 192 image_name, io_result); 193 } 194 io_result = io_close(image_handle); 195 /* Ignore improbable/unrecoverable error in 'close' */ 196 197 /* TODO: Consider maintaining open device connection from this 198 * bootloader stage 199 */ 200 io_result = io_dev_close(dev_handle); 201 /* Ignore improbable/unrecoverable error in 'dev_close' */ 202 203 return image_size; 204 } 205 206 /******************************************************************************* 207 * Generic function to load an image at a specific address given a name and 208 * extents of free memory. It updates the memory layout if the load is 209 * successful, as well as the image information and the entry point information. 210 * The caller might pass a NULL pointer for the entry point if it is not 211 * interested in this information, e.g. because the image just needs to be 212 * loaded in memory but won't ever be executed. 213 * Returns 0 on success, a negative error code otherwise. 214 ******************************************************************************/ 215 int load_image(meminfo_t *mem_layout, 216 const char *image_name, 217 uint64_t image_base, 218 image_info_t *image_data, 219 entry_point_info_t *entry_point_info) 220 { 221 uintptr_t dev_handle; 222 uintptr_t image_handle; 223 uintptr_t image_spec; 224 size_t image_size; 225 size_t bytes_read; 226 int io_result = IO_FAIL; 227 228 assert(mem_layout != NULL); 229 assert(image_name != NULL); 230 assert(image_data != NULL); 231 assert(image_data->h.version >= VERSION_1); 232 233 /* Obtain a reference to the image by querying the platform layer */ 234 io_result = plat_get_image_source(image_name, &dev_handle, &image_spec); 235 if (io_result != IO_SUCCESS) { 236 WARN("Failed to obtain reference to image '%s' (%i)\n", 237 image_name, io_result); 238 return io_result; 239 } 240 241 /* Attempt to access the image */ 242 io_result = io_open(dev_handle, image_spec, &image_handle); 243 if (io_result != IO_SUCCESS) { 244 WARN("Failed to access image '%s' (%i)\n", 245 image_name, io_result); 246 return io_result; 247 } 248 249 INFO("Loading file '%s' at address 0x%lx\n", image_name, image_base); 250 251 /* Find the size of the image */ 252 io_result = io_size(image_handle, &image_size); 253 if ((io_result != IO_SUCCESS) || (image_size == 0)) { 254 WARN("Failed to determine the size of the image '%s' file (%i)\n", 255 image_name, io_result); 256 goto exit; 257 } 258 259 /* Check that the memory where the image will be loaded is free */ 260 if (!is_mem_free(mem_layout->free_base, mem_layout->free_size, 261 image_base, image_size)) { 262 WARN("Failed to reserve memory: 0x%lx - 0x%lx\n", 263 image_base, image_base + image_size); 264 dump_load_info(image_base, image_size, mem_layout); 265 io_result = -ENOMEM; 266 goto exit; 267 } 268 269 /* We have enough space so load the image now */ 270 /* TODO: Consider whether to try to recover/retry a partially successful read */ 271 io_result = io_read(image_handle, image_base, image_size, &bytes_read); 272 if ((io_result != IO_SUCCESS) || (bytes_read < image_size)) { 273 WARN("Failed to load '%s' file (%i)\n", image_name, io_result); 274 goto exit; 275 } 276 277 /* 278 * Update the memory usage info. 279 * This is done after the actual loading so that it is not updated when 280 * the load is unsuccessful. 281 */ 282 reserve_mem(&mem_layout->free_base, &mem_layout->free_size, 283 image_base, image_size); 284 285 image_data->image_base = image_base; 286 image_data->image_size = image_size; 287 288 if (entry_point_info != NULL) 289 entry_point_info->pc = image_base; 290 291 /* 292 * File has been successfully loaded. 293 * Flush the image in TZRAM so that the next EL can see it. 294 */ 295 flush_dcache_range(image_base, image_size); 296 297 INFO("File '%s' loaded: 0x%lx - 0x%lx\n", image_name, image_base, 298 image_base + image_size); 299 300 exit: 301 io_close(image_handle); 302 /* Ignore improbable/unrecoverable error in 'close' */ 303 304 /* TODO: Consider maintaining open device connection from this bootloader stage */ 305 io_dev_close(dev_handle); 306 /* Ignore improbable/unrecoverable error in 'dev_close' */ 307 308 return io_result; 309 } 310